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    • 83. 发明授权
    • Toroidal-type continuously variable transmission
    • 环形无级变速器
    • US06440034B1
    • 2002-08-27
    • US09667772
    • 2000-09-22
    • Kouji IshikawaNobuo GotoTakashi Imanishi
    • Kouji IshikawaNobuo GotoTakashi Imanishi
    • F16H1538
    • F16H15/38
    • In the toroidal-type continuously variable transmission, the radial clearance of a second radial needle roller bearing 30 for supporting the power roller 8 on the periphery of the pivot shaft portion 26 of the displacement shaft 7 is set larger than the radial clearance of a first radial needle roller bearing 27 for supporting a support shaft portion 25 on a trunnion 6. By increasing the radial clearance of the second radial needle roller bearing 30 in this manner, an increase in the surface pressures in the contact portions between the rolling surfaces of needle rollers 32, 32 and the inner peripheral surface of the power roller 8 and the outer peripheral surface of the pivot shaft portion 26 can be restricted, thereby enhancing the durability of the toroidal-type continuously variable transmission. Also, by reducing the radial clearance of the first radial needle roller bearing 27, the inclination of the displacement shaft 7 is minimized, thereby stabilizing the rotation speed change operation thereof.
    • 在环形无级变速器中,用于将动力辊8支撑在位移轴7的枢轴部26的周边上的第二径向滚针轴承30的径向间隙被设定为大于第一 径向滚针轴承27,用于支撑耳轴6上的支撑轴部25.通过以这种方式增加第二径向滚针轴承30的径向间隙,针头的滚动表面之间的接触部分中的表面压力增加 可以限制辊32,32和动力辊8的内周面以及枢轴部26的外周面,从而提高环形无级变速器的耐久性。 此外,通过减小第一径向滚针轴承27的径向间隙,使位移轴7的倾斜度最小化,从而稳定其转速变化操作。
    • 85. 发明授权
    • Hydraulic drive of operating machine
    • 操作机液压驱动
    • US09285023B2
    • 2016-03-15
    • US14009127
    • 2012-03-28
    • Kouji IshikawaHidetoshi SatakeShinji NishikawaTakatoshi Ooki
    • Kouji IshikawaHidetoshi SatakeShinji NishikawaTakatoshi Ooki
    • E02F9/22F16H39/00E02F9/12
    • F16H39/00E02F9/128E02F9/226E02F9/2282E02F9/2285E02F9/2296Y10T477/631
    • To rapidly stop an upperstructure even though relief pressure is lowered due to an abnormality in a hydraulic device included in a swing motor driving circuit while intending to stop the upperstructure when a predetermined delay time has passed since a swing operation tool is brought back to a neutral position, provided are: a first choke for controlling a parking brake to apply a braking force to a swing motor when a predetermined delay time has passed since the tool is brought back to a neutral position in a state where the tool is connected to a pilot pump; and an on-off valve and a second choke for controlling the parking brake to apply a braking force to the motor when a delay time shorter than the predetermined delay time has passed since the tool is brought back to the neutral position and disconnected from the pilot pump.
    • 即使由于摆动马达驱动电路中包括的液压装置的异常而使安全压力降低,同时在从摆动操作工具回到中立状态的预定延迟时间过去时,为了停止上部结构,也能够快速停止上部结构 提供的是:当在工具连接到飞行员的状态下从工具返回到中立位置起经过预定​​的延迟时间时,用于控制驻车制动器以向制动力施加制动力的第一扼流圈 泵 以及一个开关阀和一个第二扼流圈,用于控制驻车制动器,当从工具返回到中立位置并与导向器断开时,当延迟时间比预定的延迟时间短一些时,向马达施加制动力 泵。
    • 87. 发明申请
    • Hydraulic Drive of Operating Machine
    • 操作机液压驱动
    • US20140323268A1
    • 2014-10-30
    • US14009127
    • 2012-03-28
    • Kouji IshikawaHidetoshi SatakeShinji NishikawaTakatoshi Ooki
    • Kouji IshikawaHidetoshi SatakeShinji NishikawaTakatoshi Ooki
    • F16H39/00
    • F16H39/00E02F9/128E02F9/226E02F9/2282E02F9/2285E02F9/2296Y10T477/631
    • To rapidly stop an upperstructure even though relief pressure is lowered due to an abnormality in a hydraulic device included in a swing motor driving circuit while intending to stop the upperstructure when a predetermined delay time has passed since a swing operation tool is brought back to a neutral position, provided are: a first choke for controlling a parking brake to apply a braking force to a swing motor when a predetermined delay time has passed since the tool is brought back to a neutral position in a state where the tool is connected to a pilot pump; and an on-off valve and a second choke for controlling the parking brake to apply a braking force to the motor when a delay time shorter than the predetermined delay time has passed since the tool is brought back to the neutral position and disconnected from the pilot pump.
    • 即使由于摆动马达驱动电路中包括的液压装置的异常而使安全压力降低,同时在从摆动操作工具回到中立状态的预定延迟时间过去时,为了停止上部结构,也能够快速停止上部结构 提供的是:当在工具连接到飞行员的状态下从工具返回到中立位置起经过预定​​的延迟时间时,用于控制驻车制动器以向制动力施加制动力的第一扼流圈 泵 以及一个开关阀和一个第二扼流圈,用于控制驻车制动器,当从工具返回到中立位置并与导向器断开时,当延迟时间比预定的延迟时间短一些时,向马达施加制动力 泵。
    • 88. 发明授权
    • Exhaust gas purification system for engineering machine
    • 工程机械废气净化系统
    • US08646255B2
    • 2014-02-11
    • US12578702
    • 2009-10-14
    • Hidenobu TsukadaKouji IshikawaYasushi AraiShohei Kamiya
    • Hidenobu TsukadaKouji IshikawaYasushi AraiShohei Kamiya
    • F01N3/00F01N3/02
    • E02F9/0866E02F9/00F01N9/002Y02T10/47
    • An exhaust gas purification system for an engineering machine is capable of avoiding decreases in working efficiency during regeneration control by burning off a deposit of particulate matter from a filter efficiently during a work pause time. An operating section 17 of a display monitor 16 is used to set a work pause time and a work pause switch 13 notifies a vehicle body control unit 21 that the hydraulic excavator has entered a work pause state. In response, the vehicle body control unit 21 calculates the time required for a regenerating device to burn off the current amount of particulate matter deposited on the filter, and when the calculated time is longer than the preset work pause time, a regeneration controller 4a of an engine control unit 4 is activated, and a solenoid control valve 15 is switched to a closed position during the preset work pause time.
    • 用于工程机械的废气净化系统能够通过在工作暂停时间期间有效地从过滤器中排除颗粒物质的沉积而避免再生控制期间的工作效率的降低。 显示监视器16的操作部17用于设定工作暂停时间,工作暂停开关13通知车体控制部21,液压挖掘机已进入作业暂停状态。 作为响应,车身控制单元21计算再生装置消除沉积在过滤器上的颗粒物质的当前量所需的时间,并且当计算出的时间比预设的工作暂停时间长时,再生控制器4a 发动机控制单元4被启动,并且在预设的工作暂停时间期间,电磁控制阀15切换到关闭位置。
    • 89. 发明申请
    • DISPLAY DEVICE FOR WORK MACHINE
    • 工作机显示装置
    • US20130342340A1
    • 2013-12-26
    • US14004537
    • 2012-04-06
    • Shinji NishikawaKouji IshikawaTakatoshi OokiKeiichiro Nakamura
    • Shinji NishikawaKouji IshikawaTakatoshi OokiKeiichiro Nakamura
    • E02F9/26
    • E02F9/26E02F9/2066E02F9/2296
    • Disclosed is a display device 5 for a work machine having an engine 9, a hydraulic pump 10 driven by the engine, a boom cylinder 3d, an arm cylinder 3e, a bucket cylinder 3f, and other actuators driven by a hydraulic fluid supplied from the hydraulic pump 10, and an operating device 6 for operating the actuators 3d, 3e, 3f. The display device 5 includes an idle state display section 50a for displaying an engine revolution speed N as no-manipulation period operating state information which is related to an engine load that is imposed while the operating device 6 is not manipulated. This makes it possible to inform an operator of the status of the engine load in an idle state for the purpose of prompting the operator to transition into a fuel-efficient state.
    • 本发明公开了一种具有发动机9,由发动机驱动的液压泵10,动臂油缸3d,斗杆油缸3e,铲斗油缸3f以及由液压油驱动的液压油驱动的其他致动器的作业机械的显示装置5。 液压泵10和用于操作致动器3d,3e,3f的操作装置6。 显示装置5包括用于显示发动机转速N作为不操作期间操作状态信息的空转状态显示部分50a,其与在不操作操作装置6时施加的发动机负载相关。 这使得可以通知操作者在空闲状态下的发动机负载的状态,以提示操作者转换到节能状态。